v(t) R (a) vo(t) = v,(0) (b) Rc 2p(1)'a Figure 10.34 (a) The integrator circuit; (b) output voltage for a step-function input with vc (0) = 0. 1,

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A single-pole op amp has an open-loop gain of 100 dB and a unity-gain frequency of 3 MHz. Find an expression for the transfer function of the integrator shown if R = 10 kΩ and C = 0.05μF. What is the integrator’s phase margin?

v(t)
R
(a)
vo(t) = v,(0)
(b)
Rc
2p(1)'a
Figure 10.34 (a) The integrator circuit; (b) output voltage for a step-function input with vc (0) = 0.
1,
Transcribed Image Text:v(t) R (a) vo(t) = v,(0) (b) Rc 2p(1)'a Figure 10.34 (a) The integrator circuit; (b) output voltage for a step-function input with vc (0) = 0. 1,
Expert Solution
Step 1

Given fT=3 MHz

Calculating angular frequency

ωT=2πfTωT=2π3 MHzωT=6×106π

Converting gain decibel to normal value

A0=10A0(dB)20A0=1010020A0=105

Step 2

Calculating feedback factor

β=RR+1sCβ=sRCsCR+1β=ss+1CR

 

Step 3

Comparing it with standard form

β=ss+ωLωL=1CRωL=10.05 μF10 KΩωL=2000

Calculating loop gain T

T=AβA=ωTs+ωBωT=A0ωB

Step 4

Comparing it

A0ωB=6×106π105ωB=6×106πωB=6×106π105ωB=60π

substituting these values in A

A=ωTs+ωBA=6×106πs+60π

Step 5

loop gain

T=AβT=6×106πs+60πss+ωL

Calculating closed loop gain

AV(s)=AVidealT1+TAVideal=-ωLsAVideal=-2000s

 

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